TY - JOUR
T1 - Nocturnal flight call monitoring reveals in-flight behavioral alteration by avian migrants in response to artificial light at night
AU - Osterhaus, Dylan M.
AU - Boland, Kelley C.
AU - Lawson, Abigail J.
AU - Horton, Kyle G.
AU - Van Doren, Benjamin M.
AU - Cutler, Patricia L.
AU - Wright, Timothy F.
AU - Desmond, Martha J.
N1 - We thank T. Huycke, D. Jimenez, and F. Quiroz for their work in acoustic data collection efforts for this study. We are grateful to the editors and two reviewers who provided feedback on our manuscript. We also thank Anna Chalfoun for her review of our manuscript. We appreciate the feedback of D. Tipton and D. Eccleston on ideas presented within this manuscript and thank them for their contributions. We thank White Sands Missile Range Meteorology Branch for providing meteorological data used within this study. Our study was funded by White Sands Missile Range and financially supported by the Avian Migration Program at New Mexico State University , which is funded by USDA NIFA 's HSI program (award # 2022-77040-37638 ), T&E Inc. , Mesilla Valley Audubon Society , the New Mexico Ornithological Society , and Amazon Cloud Credits for Research Award to B. M. Van Doren. This manuscript was approved by White Sands Missile Range on 26 February 2025 for public release and unlimited distribution. Any use, trade, firm, or product names is for descriptive purposes only and does not imply endorsement by the U.S. Government.
PY - 2025/11
Y1 - 2025/11
N2 - The world in which birds evolved to migrate has been drastically altered in the Anthropocene by artificial light. Sources of light such as urban centers or bright upward-facing lights attract migrants, altering their behavior, especially during inclement weather, often leading to mortality. Seemingly less extreme sources, such as pole-mounted floodlighting, ubiquitous throughout much of the world, have received comparatively less study, and migrant responses to such sources are poorly understood. We studied migrant behavior in relation to light at White Sands Missile Range (New Mexico, USA) by recording nocturnal flight calls at sites with and without lights during non-inclement weather. We collected 103,424 h of recordings and detected 2,851,863 calls over three fall migration seasons. We assessed how temporal, weather, and lighting variables explain variability in call rates between light and dark sites, and examined how different taxonomic groups behave in relation to light. Contrary to predictions, call rates were higher at dark sites than at light sites, and this difference was strongest early in the migration season. We found illuminated sites with a greater proportion of shielded lights, or with lights of higher dominant wavelengths (warmer color temperatures), had higher call rates (closely resembling dark sites) than other light sites, indicating that these factors may reduce impact to migrants. Our taxonomic analyses revealed consistent differences in call rate between light and dark sites for warblers, but no difference for most sparrows. Our findings indicate that lights alter behavior, but the use of “bird-friendly” lighting strategies may reduce this impact.
AB - The world in which birds evolved to migrate has been drastically altered in the Anthropocene by artificial light. Sources of light such as urban centers or bright upward-facing lights attract migrants, altering their behavior, especially during inclement weather, often leading to mortality. Seemingly less extreme sources, such as pole-mounted floodlighting, ubiquitous throughout much of the world, have received comparatively less study, and migrant responses to such sources are poorly understood. We studied migrant behavior in relation to light at White Sands Missile Range (New Mexico, USA) by recording nocturnal flight calls at sites with and without lights during non-inclement weather. We collected 103,424 h of recordings and detected 2,851,863 calls over three fall migration seasons. We assessed how temporal, weather, and lighting variables explain variability in call rates between light and dark sites, and examined how different taxonomic groups behave in relation to light. Contrary to predictions, call rates were higher at dark sites than at light sites, and this difference was strongest early in the migration season. We found illuminated sites with a greater proportion of shielded lights, or with lights of higher dominant wavelengths (warmer color temperatures), had higher call rates (closely resembling dark sites) than other light sites, indicating that these factors may reduce impact to migrants. Our taxonomic analyses revealed consistent differences in call rate between light and dark sites for warblers, but no difference for most sparrows. Our findings indicate that lights alter behavior, but the use of “bird-friendly” lighting strategies may reduce this impact.
KW - Artificial light at night
KW - Bioacoustics
KW - Bird migration
KW - Light pollution
KW - Migration behavior
KW - Nocturnal flight call
UR - https://www.scopus.com/pages/publications/105014246542
UR - https://www.scopus.com/pages/publications/105014246542#tab=citedBy
U2 - 10.1016/j.biocon.2025.111441
DO - 10.1016/j.biocon.2025.111441
M3 - Article
AN - SCOPUS:105014246542
SN - 0006-3207
VL - 311
JO - Biological Conservation
JF - Biological Conservation
M1 - 111441
ER -